A novel approach has been developed to prepare the magnetic micelles. Polyethylene glycol (PEG) and poly(N-isopropylacrylamide) (PNIPAM) are firstly attached on the surface of the magnetic nanoparticle via the host-guest inclusion between ferrocene groups (Fc) and beta-cyclodextrin (beta-CD). Then the resulting MNPs became amphiphilic in water above the LCST of PNIPAM and self-assembled into magnetomicelles with a size of 250 nm. These hybrid micelles show high loading capacity for anticancer drug (DOX) and high saturation magnetization simultaneously. Furthermore, these micelles could disassemble under the effects of oxidant or temperature, providing an opportunity to fine-tune the release properties of the encapsulated drug in response to...
Hybrid nanogels, composed of thermoresponsive polymers and superparamagnetic nanoparticles, are attr...
The design and development of water dispersible, pH responsive peptide mimic shell cross-linked magn...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
Hybrid nanoarchitectures such as magnetic polymeric micelles (MPMs) are among the most promising nan...
Magnetic micelle nanoparticles with thermoresponsive behavior were designed for thermo-triggered pac...
In this study, we report the realization of drug-loaded smart magnetic nanocarriers constituted by s...
International audienceHydrophobically modified maghemite (γ-Fe2O3) nanoparticles were encapsulated w...
A novel tumor-targeting polymersome carrier system capable of delivering magnetic resonance imaging ...
Self-assembled short peptide-based gels are highly promising drug delivery systems. However, impleme...
Two end-decorated homopolyrners, methoxy polyethylene glycol-ferrocene (mPEG-Fc) and poly(N-isopropy...
International audienceHerein, original magnetic drug delivery nanomaterials for cancer therapy are d...
International audienceHybrid nanogels, composed of thermoresponsive polymers and superparamagnetic n...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
International audienceLocal and temporal control of drug release has for long been a main focus in t...
Hybrid nanogels, composed of thermoresponsive polymers and superparamagnetic nanoparticles, are attr...
The design and development of water dispersible, pH responsive peptide mimic shell cross-linked magn...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
Hybrid nanoarchitectures such as magnetic polymeric micelles (MPMs) are among the most promising nan...
Magnetic micelle nanoparticles with thermoresponsive behavior were designed for thermo-triggered pac...
In this study, we report the realization of drug-loaded smart magnetic nanocarriers constituted by s...
International audienceHydrophobically modified maghemite (γ-Fe2O3) nanoparticles were encapsulated w...
A novel tumor-targeting polymersome carrier system capable of delivering magnetic resonance imaging ...
Self-assembled short peptide-based gels are highly promising drug delivery systems. However, impleme...
Two end-decorated homopolyrners, methoxy polyethylene glycol-ferrocene (mPEG-Fc) and poly(N-isopropy...
International audienceHerein, original magnetic drug delivery nanomaterials for cancer therapy are d...
International audienceHybrid nanogels, composed of thermoresponsive polymers and superparamagnetic n...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
International audienceLocal and temporal control of drug release has for long been a main focus in t...
Hybrid nanogels, composed of thermoresponsive polymers and superparamagnetic nanoparticles, are attr...
The design and development of water dispersible, pH responsive peptide mimic shell cross-linked magn...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...